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Design of Complex BPF with Automatic Digital Tuning Circuit for Low-IF Receivers

机译:低中频接收机的具有自动数字调谐电路的复杂BPF设计

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This paper describes the architecture and implementations of an automatic digital tuning circuit for a complex bandpass filter (BPF) in a low-power and low-cost transceiver for applications such as personal authentication and wireless sensor network systems. The architectural design analysis demonstrates that an active RC filter in a low-IF architecture can be at least 47.7% smaller in area than a conventional g_m-C filter; in addition, it features a simple implementation of an associated tuning circuit. The principle of simultaneous tuning of both the center frequency and bandwidth through calibration of a capacitor array is illustrated as based on an analysis of filter characteristics, and a scalable automatic digital tuning circuit with simple analog blocks and control logic having only 835 gates is introduced. The developed capacitor tuning technique can achieve a tuning error of less than ±3.5% and lower a peaking in the passband filter characteristics. An experimental complex BPF using 0.18μm CMOS technology can successfully reduce the tuning error from an initial value of -20% to less than ±2.5% after tuning. The filter block dimensions arc 1.22mm× 1.01 mm; and in measurement results of the developed complex BPF with the automatic digital tuning circuit, current consumption is 705μA and the image rejection ratio is 40.3 dB. Complete evaluation of the BPF indicates that this technique can be applied to low-power, low-cost transceivers.
机译:本文介绍了一种用于低功耗,低成本收发器中的复杂带通滤波器(BPF)的自动数字调谐电路的体系结构和实现,该电路用于个人身份验证和无线传感器网络系统等应用。架构设计分析表明,低中频架构中的有源RC滤波器的面积至少比传统g_m-C滤波器小47.7%。另外,它具有相关调谐电路的简单实现。通过对电容器特性的分析,说明了通过校准电容器阵列同时调谐中心频率和带宽的原理,并介绍了具有简单模拟模块和仅具有835个门的控制逻辑的可扩展自动数字调谐电路。发达的电容器调谐技术可实现小于±3.5%的调谐误差,并降低通带滤波器特性的峰值。使用0.18μmCMOS技术的实验性复杂BPF可以在调整后成功地将调整误差从-20%的初始值减小到小于±2.5%。滤块尺寸为1.22mm×1.01mm;在采用自动数字调谐电路开发的复杂BPF的测量结果中,电流消耗为705μA,镜像抑制比为40.3 dB。对BPF的完整评估表明,该技术可以应用于低功耗,低成本收发器。

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